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Improving the multiferroic properties and ability to absorb electromagnetic microwaves of NFO/BZT-BCT composites. [PDF]
Thanh TD +7 more
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Electric field-induced ferromagnetic domain change by ferroelectric topological domain switching in Co-substituted BiFeO<sub>3</sub> nanodots. [PDF]
Lee K +6 more
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Investigation of Magnetoelectric Properties and Applications in Multiferroic Composite. [PDF]
Deng T, Gu J, Wang D, Jiao J.
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Topological layer Hall effect in two-dimensional type-I multiferroic heterostructure. [PDF]
Du W +6 more
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Nanoscale, 2021
2D multiferroics achieve multiple functions and new mechanisms through magnetoelectric, piezoelectric, and magnetoelastic coupling phenomena, opening up new research avenues.
Yunye Gao, Mingyuan Gao, Yuerui Lu
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2D multiferroics achieve multiple functions and new mechanisms through magnetoelectric, piezoelectric, and magnetoelastic coupling phenomena, opening up new research avenues.
Yunye Gao, Mingyuan Gao, Yuerui Lu
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Multiferroic and Magnetoelectric Materials
ChemInform, 2006AbstractChemInform is a weekly Abstracting Service, delivering concise information at a glance that was extracted from about 200 leading journals. To access a ChemInform Abstract, please click on HTML or PDF.
W, Eerenstein, N D, Mathur, J F, Scott
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Multiferroic heterostructures and tunneling junctions [PDF]
Multiferroic heterostructures showing both electric and magnetic orders have attracted much attention because of their promising applications in the next generation of memories, sensors, and microwave devices and so on.
Weichuan Huang, Xiaoguang Li
exaly +2 more sources
Addendum to ‘Multiferroic fluorides’
Journal of Physics: Condensed Matter, 2011An additional eight or ten fluorides with multiferroic phases are listed as an addendum to our recent review ‘Multiferroic Fluorides’ (Scott J F and Blinc R 2011 J. Phys.: Condens. Matter 23 113202).
J F, Scott, R, Blinc
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Reports on Progress in Physics, 2014
Multiferroics, compounds with both magnetic and ferroelectric orders, are believed to be a key material system to achieve cross-control between magnetism and electricity in a solid with minute energy dissipation. Such a colossal magnetoelectric (ME) effect has been an issue of keen interest for a long time in condensed matter physics as well as a most ...
Yoshinori, Tokura +2 more
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Multiferroics, compounds with both magnetic and ferroelectric orders, are believed to be a key material system to achieve cross-control between magnetism and electricity in a solid with minute energy dissipation. Such a colossal magnetoelectric (ME) effect has been an issue of keen interest for a long time in condensed matter physics as well as a most ...
Yoshinori, Tokura +2 more
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2017
This chapter delves into the physics of multiferroics, the recent developments of which are discussed here from the viewpoint of the spin current and “emergent electromagnetism” for constrained systems. It presents the three sources of U(1) gauge fields, namely, the Berry phase associated with the noncollinear spin structure, the spin-orbit interaction
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This chapter delves into the physics of multiferroics, the recent developments of which are discussed here from the viewpoint of the spin current and “emergent electromagnetism” for constrained systems. It presents the three sources of U(1) gauge fields, namely, the Berry phase associated with the noncollinear spin structure, the spin-orbit interaction
openaire +1 more source

